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Design and test of voltage and current probes for EAST ICRF antenna impedance measurement

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【作者】 王健华陈根赵燕平毛玉周袁帅张新军杨桦秦成明程艳杨宇晴Guillaume URBANCZYK刘鲁南程健

【Author】 Jianhua WANG;Gen CHEN;Yanping ZHAO;Yuzhou MAO;Shuai YUAN;Xinjun ZHANG;Hua YANG;Chengming QIN;Yan CHENG;Yuqing YANG;Guillaume URBANCZYK;Lunan LIU;Jian CHENG;Institute of Plasma Physics, Chinese Academy of Sciences;University of Science and Technology of China;CEA, IRFM;

【机构】 Institute of Plasma Physics, Chinese Academy of SciencesUniversity of Science and Technology of ChinaCEA, IRFM

【摘要】 On the experimental advanced superconducting tokamak(EAST), a pair of voltage and current probes(V/I probes) is installed on the ion cyclotron radio frequency transmission lines to measure the antenna input impedance, and supplement the conventional measurement technique based on voltage probe arrays. The coupling coefficients of V/I probes are sensitive to their sizes and installing locations, thus they should be determined properly to match the measurement range of data acquisition card. The V/I probes are tested in a testing platform at low power with various artificial loads. The testing results show that the deviation of coupling resistance is small for loads RL?>?2.5 Ω, while the resistance deviations appear large for loads RL?<?1.5 Ω, which implies that the power loss cannot be neglected at high VSWR. As the factors that give rise to the deviation of coupling resistance calculation, the phase measurement error is the more significant factor leads to deleterious results rather than the amplitude measurement error. To exclude the possible ingredients that may lead to phase measurement error, the phase detector can be calibrated in steady L-mode scenario and then use the calibrated data for calculation under H-mode cases in EAST experiments.

【Abstract】 On the experimental advanced superconducting tokamak(EAST), a pair of voltage and current probes(V/I probes) is installed on the ion cyclotron radio frequency transmission lines to measure the antenna input impedance, and supplement the conventional measurement technique based on voltage probe arrays. The coupling coefficients of V/I probes are sensitive to their sizes and installing locations, thus they should be determined properly to match the measurement range of data acquisition card. The V/I probes are tested in a testing platform at low power with various artificial loads. The testing results show that the deviation of coupling resistance is small for loads RL?>?2.5 Ω, while the resistance deviations appear large for loads RL?<?1.5 Ω, which implies that the power loss cannot be neglected at high VSWR. As the factors that give rise to the deviation of coupling resistance calculation, the phase measurement error is the more significant factor leads to deleterious results rather than the amplitude measurement error. To exclude the possible ingredients that may lead to phase measurement error, the phase detector can be calibrated in steady L-mode scenario and then use the calibrated data for calculation under H-mode cases in EAST experiments.

【关键词】 EASTICRFantennaimpedance
【Key words】 EASTICRFantennaimpedance
【基金】 National Natural Science Foundation of China under grant Nos. 11575237, 11775258, 11675213, 11375235 and 11375236;National key research and development program (grant Nos. 2016YFA0400600 and 2016YFA0400601);International Scientific and Technological Cooperation Project of Anhui (grant No. 1704e1002207);the National Magnetic Confinement Fusion Science Programme of China (grant Nos. 2015GB101001 and 2013GB106001B);JSPSNRF-NSFC A3 Foresight Program in the field of Plasma Physics (NSFC No. 11261140328)
  • 【文献出处】 Plasma Science and Technology ,等离子体科学和技术(英文版) , 编辑部邮箱 ,2018年04期
  • 【分类号】TL631.24
  • 【被引频次】2
  • 【下载频次】24
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